首页> 外文期刊>Pain. >Lack of evidence for significant neuronal loss in laminae I-III of the spinal dorsal horn of the rat in the chronic constriction injury model.
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Lack of evidence for significant neuronal loss in laminae I-III of the spinal dorsal horn of the rat in the chronic constriction injury model.

机译:在慢性收缩损伤模型中,缺乏证据表明大鼠脊髓背角的I-III层神经元明显丢失。

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摘要

Peripheral nerve injury leads to structural and functional changes in the spinal dorsal horn, and these are thought to be involved in the development of neuropathic pain. In the chronic constriction injury (CCI) model, abnormal 'dark' neurons and apoptotic nuclei have been observed in laminae I-III of the dorsal horn in the territory innervated by the injured sciatic nerve. These findings have been taken as evidence that there is significant neuronal death in this model, and it has been suggested that loss of inhibition resulting from death of GABAergic inhibitory interneurons contributes to the neuropathic pain. However, loss of neurons from the dorsal horn has not been directly demonstrated in neuropathic models, even though this issue is of considerable importance for our understanding of the mechanisms that underlie neuropathic pain. In this study, we have looked for evidence of neuronal death by using a stereological method (the optical disector) with NeuN-immunostaining, and examining spinal cords of naive rats, and of rats that had undergone CCI or sham operations. All of the CCI animals showed clear signs of thermal hyperalgesia. However, the numbers of neurons in laminae I-III of the ipsilateral dorsal horn in these animals did not differ significantly from those on the contralateral side, nor from those of sham-operated or naive animals. These results do not, therefore, support the suggestion that there is significant neuronal death in the dorsal horn in this model.
机译:周围神经损伤导致脊髓背角的结构和功能改变,这些被认为与神经性疼痛的发展有关。在慢性收缩损伤(CCI)模型中,在受损伤的坐骨神经支配的区域中,在背角的I-III层中观察到了异常的“深色”神经元和凋亡核。这些发现已被证明是该模型中明显的神经元死亡的证据,并且已经表明由GABA能抑制性中间神经元的死亡导致的抑制丧失导致了神经性疼痛。然而,尽管在我们理解神经性疼痛基础的机制中这一问题具有重要意义,但是在神经病理模型中并未直接证实背角神经元的丧失。在这项研究中,我们通过使用带有NeuN免疫染色的立体方法(光学解剖器​​)寻找神经元死亡的证据,并检查了幼稚大鼠以及进行过CCI或假手术的大鼠的脊髓。所有CCI动物均表现出明显的热痛觉过敏迹象。然而,这些动物的同侧背角的I-III层神经元的数量与对侧的无明显差异,与假手术或幼稚的动物的无明显差异。因此,这些结果不支持在该模型中背角中存在明显的神经元死亡的提示。

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